IT in Engineering. Current Status and Prospects

საკვანძო სიტყვები

Engineering
technologies
computerization
software

როგორ უნდა ციტირება

Megrelishvili, Z., Didmanidze, I., & Megrelishvili, G. (2026). IT in Engineering. Current Status and Prospects. საერთაშორისო სამეცნიერო - პრაქტიკული კონფერენცია „თანამედროვე გამოწვევები და მიღწევები ინფორმაციულ და საკომუნიკაციო ტექნოლოგიებში" შრომები, 4, 201-206. https://papers.4science.ge/index.php/mcaaict/article/view/407

ანოტაცია

Currently, there is no field of activity in which the participation of an engineer is not required. Products created by the engineering industry are needed everywhere where people live and work. Our century has created new challenges for engineering. Engineering industry products must be created not only quickly, but also with high quality, ensuring a comfortable living or working environment for people and for the safety of the environment. Based on all this, it is interesting how IT technologies have been entering the engineering field and how computerization of this field contributes to it.The main advantages of new engineering technologies are relatively low price, high quality, and safety. For a long time, they were developed with the aim of creating the most comfortable and high-quality products in the shortest possible time, products that would meet all reliability standards. In recent years, engineering technologies have reached a new, higher level, significantly reducing product manufacturing time and improving human and environmental safety.

წყაროები

. Gitelman, L.; Kozhevnikov, M.; Visotskaya, Y. Diversification as a Method of Ensuring the Sustainability of Energy Supply within the Energy Transition. Resources 2023, 12, 19. https://doi.org/10.3390/resources12020019

. Alpcan, T. (2015). Game Theory for Security. In: Baillieul, J., Samad, T. (eds) Encyclopedia of Systems and Control. Springer, London. https://doi.org/10.1007/978-1-4471-5058-9_37

. Alexei A Gaivoronski and Yuri Ermoliev. Optimization of Simulation Models and other Complex Problems with Stochastic Gradient Methods. In: Alexei A. Gaivoronski, Pavlo S. Knopov, Volodymyr A. Zaslavskyi (eds) Modern Optimization Methods for Decision Making Under Risk and Uncertainty. CRC Press Taylor & Francis Group, London, New York , 2023, pp. 1-15;

. Zaslavskyi V., Pasichna M. (2019) Optimization Techniques for Modelling Energy Generation Portfolios in Ukraine and the EU: Comparative Analysis. In: Zamojski W., Mazurkiewicz J., Sugier J., Walkowiak T., Kacprzyk J. (eds) Contemporary Complex Systems and Their Dependability. DepCoS-RELCOMEX 2018. Advances in Intelligent Systems and Computing, vol 761. Springer, Cham, pp 545-555;

. Rusyn, B.P., Lutsyk, O.A. & Kosarevych, R.Y. Evaluating the Informativity of a Training Sample for Image Classification by Deep Learning Methods. Cybern Syst Anal 57, 853–863 (2021). https://doi.org/10.1007/s10559-021-00411-4;

. Khilenko, V., Akhmetov, B., Berdibayev, R. et al. Increasing the Speed of Banking Cybersecurity Systems Based on Intelligent Data Analysis and Artificial Intelligence Algorithms for Predicting Cyberattacks. I. Cybern Syst Anal 59, 519–525 (2023). https://doi.org/10.1007/s10559-023-00587-x ;

. Stetsyuk P.I., Stovba V.O., Tregubenko, S.S. et al. Modifications of the Two-Stage Transportation Problem and Their Applications*. Cybern Syst Anal 58, 898–913 (2022). https://doi.org/10.1007/s10559-023-00523-z

. Zurab Megrelishvili; Ibraim Didmanidze; Volodymyr Zaslavskyi; David Chkhubiani; Didar Didmanidze. Mathematical and Software Provision for Optimization of Water Treatment Processes. 13th International Conference on Dependable Systems, Services and Technologies (DESSERT). 13-15 October 2023. Athens, Greece. Date Added to IEEE Xplore: 06 February 2024. Publisher: IEEE, Pages 1-8. DOI: 10.1109/DESSERT61349.2023.10416442,

. Megrelishvili Z., Didmanidze I., Zaslavskiy V. Development of Technology for Utilization of Sulphate Waste Water of Detergents Production. In: Ivanov V. et al. (eds) Advances in Design, Simulation and Manufacturing II. DSMIE 2019. Lecture Notes in Mechanical Engineering. Springer, Cham. ISBN 978-3-030-22364-9, DOI https://doi.org/10.1007/978-3-030-22365-6_78, pp. 785-794;

. Galkina, E., Vasyutina, O.: Reuse of treated wastewater. IOP Conf. Series: Materials Science and Engineering 365, 022047 (2018).

. https://iopscience.iop.org/article/10.1088/1757-899X/365/2/022047/pdf ;

. Zurab Megrelishvili, Vladimer Chkhaidze. Georgian Patent GE P 2010 4952 B, Device for Sampling Loose Materials, published 2010 04 12, International Classification Index C 0,1 N 1/20, Sakpatenti, Bulletin #7 2010. (in Georgian);

. Gogichaishvili Giorgi, Megrelishvili Zurab, Didmanidze Ibraimi, Kakhiani Grigoli. Computer program “Calculation program for optimization of the regeneration process and operation of a cationic filter” Sakpatenti, certificate 3028, 2008.03.24 (in Georgian);

. I. Kvaraya, Modern technologies of construction production, GTU, Tbilisi. 2018. 104. p. (in Georgian);

. Z. Ezugbaya, I. Kvaraya, I. Iremashvili, N. Mskhiladze, construction production technology, GTU, Tbilisi, 2017. 103. p. (in Georgian);

. Z. Ezugbaya, sh. Bakanidze, I. Kvaraya, I. Iremashvili, Technology of construction processes, I and II part, GTU, Tbilisi. 2016. 203. p. (in Georgian);